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Sodium Ion Cylindrical Cells - Layered Oxide - Rechargeable Battery SIB Na-ion Cell
Sodium Ion Cylindrical Cells - Layered Oxide - Rechargeable Battery SIB Na-ion Cell
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Advanced Sodium Ion Battery Cells, finally a cheaper alternative to lithium-ion cells.
Sodium-ion battery cells have gained attention as a promising alternative to traditional LFP cells. One significant advantage of sodium-ion cells is its better performance at low temperature compared to LFP. Sodium is more abundant and sustainably resourced compared to lithium, so it has the potential to be a cheaper replacement for lithium-ion
Sodium-ion batteries are also known for their stable electrochemical performance, which translates to a longer cycle life. This longevity can reduce the cost of ownership over time. Sodium-ion cells offer a lower energy density compared to LFP cells, but a higher energy density compared to lead acid.
These cells use a layered oxide sodium-ion chemistry, which provides a wide operating voltage range (1.8–3.95 V) and delivers higher energy density compared to other sodium chemistries like polyanions or Prussian blue analogs. This makes them particularly attractive for performance-driven applications where cost and abundant materials matter.
Cylindrical Cell Sizes:
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18650
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Dimensions: 18.35 D, 65.2 L (mm)
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Amp-hours: 1,300mAh
- Weight: 36.5 ±0.5g
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Dimensions: 18.35 D, 65.2 L (mm)
Key Features:
- Sodium-ion Chemistry: Layered Oxide Sodium-ion offers a higher voltage range and energy density compared to polyanion or Prussian blue analog chemistries.
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Reliable Power Source: This 3.05V Sodium Ion Battery Cell is designed to provide a consistent and reliable power source for a wide range of applications.
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Versatile Compatibility: Whether you're an electric skateboard enthusiast, a DIY enthusiast, or simply in need of a dependable power source for your flashlight, this battery pack is your go-to choice.
- Sustainable Sodium Technology: Our sodium ion cells are not only an eco-friendly alternative but also more abundant than traditional lithium-ion batteries, ensuring a sustainable energy solution.
- Long-Lasting Performance: With an internal impedance of ≤30mΩ, this battery pack provides stable electrochemical performance, an extended cycle life, and the ability to be charged and discharged repeatedly, saving you money on replacements.
Product Specifications:
- Nominal Voltage: 3.05V
- Limited Charge Voltage: 3.95V
- Discharge End Voltage: 1.8V
- Cell Chemistry: Sodium-ion Layered Oxide
- Rated Capacity: 1,300mAh (0.2C)
- Internal Impedance: ≤30mΩ
- Charging Temperature: -20°C to 55°C (below 0°C <0.2C)
- Discharging Temperature: -40°C to 60°C
- Standard Charge Current: 0.5C (650mA)
- Standard Discharge Current: 0.5C (650mA)
- Max Charge Current: 1C (1,300mA)
- Max Discharge Current: 6C (7,800mA) @ 25°C
- Cycle life: ≥1,000 cycles to 80% SOH (25°C, 0.5C CCCV)
NFPP vs. Layered Oxide — What's the Difference?
| Characteristic | Layered Oxide | NFPP (Polyanion) |
|---|---|---|
| Voltage Range | 1.8 – 3.95 V | ~2.0 – 3.8 V |
| Energy Density | Higher | Moderate |
| Cycle Life | ~1,000+ cycles | 3,000–4,000 cycles |
| Thermal Stability | Moderate | High |
| Best For | Higher voltage and performance applications (e.g. mobility) | Stationary storage, long-cycle life systems |
Cell Spot Welding Recommendations:
Note: Sodium-ion cells are different from lithium-ion cells and you cannot use too high of a power when spot welding.
- Start with the lowest power setting possible
- Weld for 1.5 seconds max
- If tabs are not welded, then slightly increase power setting and repeat until tabs are secure
Datasheet:
I wanted to try Sodium type batteries and the seller was helpful in sharing voltage limits and BMS recommendations. Cool store!

I wanted to try Sodium type batteries and the seller was helpful in sharing voltage limits and BMS recommendations. Cool store!